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用于泌尿科组织工程的膀胱生物反应器的构建和评估。

Construction and evaluation of urinary bladder bioreactor for urologic tissue-engineering purposes.

机构信息

Department of Urology, Mid-Western Regional Hospital, Limerick, Ireland.

出版信息

Urology. 2011 Oct;78(4):954-60. doi: 10.1016/j.urology.2011.06.036.

Abstract

OBJECTIVE

To design and construct a urinary bladder bioreactor for urologic tissue-engineering purposes and to compare the viability and proliferative activity of cell-seeded extracellular matrix scaffolds cultured in the bioreactor with conventional static growth conditions.

MATERIALS AND METHODS

A urinary bladder bioreactor was designed and constructed to replicate physiologic bladder dynamics. The bioreactor mimicked the filling pressures of the human bladder by way of a cyclical low-delivery pressure regulator. In addition, cell growth was evaluated by culturing human urothelial cells (UCs) on porcine extracellular matrix scaffolds in the bioreactor and in static growth conditions for 5 consecutive days. The attachment, viability, and proliferative potential were assessed and compared with quantitative viability indicators and by fluorescent markers for intracellular esterase activity and plasma membrane integrity. Scaffold integrity was characterized with scanning electron microscopy and 4',6-diamidino-2-phenylindole staining.

RESULTS

No significant difference in cell viability was identified between both experimental groups after 3 days of culture (P = .06). By day 4, the number of viable UCs was significantly greater in the bioreactor compared with the number cultured under static conditions (P = .009). A significant difference in UC viability was also present after 5 days of culture between the bioreactor and static group (P = .006). Viability/cytotoxicity assays performed on day 5 also confirmed the viability of UCs in both experimental groups.

CONCLUSION

Significantly greater UC growth occurred on the extracellular matrix scaffolds cultured in the bioreactor compared with conventional static laboratory conditions after 3 days of culture. Our initial bioreactor prototype might be helpful for permitting additional advances in urinary bladder bioreactor technology.

摘要

目的

设计并构建一种用于泌尿科组织工程的膀胱生物反应器,并比较在生物反应器中培养的细胞接种细胞外基质支架的活力和增殖活性与传统静态生长条件下的细胞接种细胞外基质支架的活力和增殖活性。

材料和方法

设计并构建了一种膀胱生物反应器,以复制生理膀胱动力学。生物反应器通过循环低输送压力调节器来模拟人体膀胱的充盈压力。此外,通过在生物反应器和静态生长条件下连续培养 5 天,评估和比较细胞生长,培养人尿路上皮细胞 (UCs) 在猪细胞外基质支架上。通过定量活力指标和细胞内酯酶活性和质膜完整性的荧光标记评估细胞附着、活力和增殖潜力。通过扫描电子显微镜和 4',6-二脒基-2-苯基吲哚染色来表征支架完整性。

结果

培养 3 天后,两组实验细胞活力无显著差异 (P =.06)。到第 4 天,生物反应器中培养的 UC 活细胞数明显多于静态条件下培养的 UC 活细胞数 (P =.009)。培养 5 天后,生物反应器与静态组之间的 UC 活力也存在显著差异 (P =.006)。第 5 天进行的细胞活力/细胞毒性测定也证实了两组实验中 UC 的活力。

结论

在培养 3 天后,与传统的静态实验室条件相比,在生物反应器中培养的细胞外基质支架上的 UC 生长明显更多。我们最初的生物反应器原型可能有助于促进膀胱生物反应器技术的进一步发展。

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